生物技术通报 ›› 2024, Vol. 40 ›› Issue (9): 131-140.doi: 10.13560/j.cnki.biotech.bull.1985.2024-0113
• 薯类作物生物技术专题(专题主编:徐建飞,尚轶) • 上一篇 下一篇
收稿日期:
2024-01-31
出版日期:
2024-09-26
发布日期:
2024-10-12
通讯作者:
白小东,男,研究方向:马铃薯育种与栽培技术;E-mail:bxd5561@126.com作者简介:
毛向红,女,研究方向:马铃薯遗传育种;E-mail:155347505@qq.com
基金资助:
MAO Xiang-hong(), LU Yao, FAN Xiang-bin, DU Pei-bing, BAI Xiao-dong()
Received:
2024-01-31
Published:
2024-09-26
Online:
2024-10-12
摘要:
【目的】对引进的马铃薯品种进行遗传多样性分析和评价。【方法】使用SSR荧光标记毛细管电泳法分析51份引进的马铃薯品种的遗传多样性,并构建分子身份证。【结果】41对引物共扩增出327个等位位点,311个等位位点在相同位置存在差异性,多态性比例是95.11%;引物多态性信息指数(PIC)在0-0.89之间,平均为0.71;Shannon's(I)在0-0.54之间,平均为0.32。在遗传相似系数GS为0.76时,将供试材料分为6大类,第I类包括14个品种;第II类包括30个品种,第III类包括3个品种,第V类包括2个品种;第IV类和第VI类各包含1个品种。聚类分析发现维拉斯、定薯4号、克新33号和东农312这4个品种可作为马铃薯育种材料。【结论】筛选到3对核心引物STM0037、SSR0387、SSR01054可用于构建51个马铃薯品种的指纹图谱和分子身份证。
毛向红, 卢瑶, 范向斌, 杜培兵, 白小东. 基于SSR荧光标记毛细管电泳的马铃薯品种遗传多样性分析及分子身份证构建[J]. 生物技术通报, 2024, 40(9): 131-140.
MAO Xiang-hong, LU Yao, FAN Xiang-bin, DU Pei-bing, BAI Xiao-dong. Genetic Diversity Analysis of Potato Varieties Based on SSR Fluorescent Marker Capillary Electrophoresis and Construction of Molecular Identity Card[J]. Biotechnology Bulletin, 2024, 40(9): 131-140.
序号 Code | 引物 Primer | 上游引物 Forward primer(5'-3') | 下游引物 Reverse primer(5'-3') | 荧光标记 Tag | 染色体 Chr. | 长度 Length/bp |
---|---|---|---|---|---|---|
P1 | PM0950 | GGAGGGAAAAATTAGGTATTGATGG | CCTTTGAGGCTTTGACCGTATCTA | FAM(blue) | VI | 91-133 |
P2 | STM1091 | GGACAATCCATAAATCTCAG | AGCAGCAGCAGCCTCTCCTA | FAM(blue) | XII | 108 |
P3 | SSR12419 | TGCACTTTCTTTGTCACCATTC | TGACCTACTGTATGCTTTGGAA | FAM(blue) | IX | 105-174 |
P4 | PM0936 | AGTTGTGTCTCAATCCTTTCACGA | TGCTTAAAAATCTGACTTTGGTGTTC | FAM(blue) | XII | 103-132 |
P5 | SSR15406 | TCCATATGCAAGTGGCAAAA | CACGTTGGATCCAGGAGGTA | FAM(blue) | X | 173-190 |
P6 | PM0642 | GCATCCGTTAATTTCGGAAAAA | AACCCTAGTCATTTGGGTGGATCT | FAM(blue) | XII | 118-139 |
P7 | PM0998 | TCAATATACTTGGTCAGCAGCCTGT | CTTTCCCATATCCAGAGAGTGAGG | FAM(blue) | III | 125-146 |
P8 | PM1152 | CGAAGAATATTTCTTTTTGAATACATCA | GGTACATTTTGTATCAATTTGTTCAGG | FAM(blue) | I | 138-158 |
P9 | STM1106 | TCCAGCTGATTGGTTAGGTTG | ATGCGAATCTACTCGTCATGG | FAM(blue) | X | 138-190 |
P10 | PM0938 | CTTATGTTTTGATCTATTACACATGGCA | ACTCGAGACCTCTGATTTATGGGA | FAM(blue) | VII | 143-179 |
P11 | SSR0675 | GCTGTGTTTTCAATTTCTTCAGCA | GTCTCGTTGTTCATCAAA | FAM(blue) | VI | 137-150 |
P12 | PM0678 | CCATCATGAGCCTTGCTTACATTT | CAACAAGGCACAAAGCTAACAGAA | FAM(blue) | VIII | 143-162 |
P13 | STWIN12G | TGTTGATTGTGGTGATAA | TGTTGGACGTGACTTGTA | FAM(blue) | XI | 155-164 |
P14 | SSR17995 | GGCTTTTGTGTGTTTAGGACG | GGTCTCTTTCCGGCCACTA | FAM(blue) | VI | 117-194 |
P15 | SSR05305 | TGCCCAGCTCTAGATTCCAT | CAATGTTACAGACTCGCAGGA | FAM(blue) | II | 164-190 |
P16 | PM0355 | TCGAAATACTATCACGGACCAACA | TGACATCAACTCACGTTCACTATCTTT | FAM(blue) | II | 178-221 |
P17 | SSR08337 | CGTTAAGGAGGAGGAGGAAAA | CCAAATAACGTGTTGAGCCC | FAM(blue) | IV | 179-203 |
P18 | SSR05059 | CCTTTCTGTTCTTCGTTCCG | TGACTCAAAAGGTTTTTCGAACT | FAM(blue) | IX | 177-224 |
P19 | SSR01054 | TAGGGATGAGCTTCAACTCG | CGGTTCTGACTTGGACTAATGA | FAM(blue) | VII | 187-219 |
P20 | PM0878 | TTCCTTTGGGGAATTTGTCTTTTT | TCAAGAAAGAGCTTGCGTGATATTC | FAM(blue) | I | 175-212 |
P21 | STM1052 | CAATTTCGTTTTTTCATGTGACAC | ATGGCGTAATTTGATTTAATACGTAA | FAM(blue) | IX | 207-254 |
P22 | STM5120 | ATCCTTCTATGGCGTTCCAA | ATTGCTCAAGAATGGCCAC | FAM(blue) | VII | 89-139 |
P23 | STI032 | TGGGAAGAATCCTGAAATGG | TGCTCTACCAATTAACGGCA | FAM(blue) | V | 107-125 |
P24 | STM1058 | ACAATTTAATTCAAGAAGCTAGG | CCAAATTTGTATACTTCAATATGA | FAM(blue) | III | 105-118 |
P25 | STI033 | TGAGGGTTTTCAGAAAGGGA | CATCCTTGCAACAACCTCCT | FAM(blue) | VII | 109-130 |
P26 | STG0016 | AGCTGCTCAGCATCAAGAGA | ACCACCTCAGGCACTTCATC | FAM(blue) | I | 117-154 |
P27 | STM2013 | TTCGGAATTACCCTCTGCC | AAAAAAAGAACGCGCACG | FAM(blue) | VII | 140-165 |
P28 | STI017 | TATGGAAATTCCGGTGATGG | GACGGTGACAAAGAGGAAGG | FAM(blue) | XI | 160-172 |
P29 | STM0019a | AATAGGTGTACTGACTCTCAATG | TTGAAGTAAAAGTCCTAGTATGTG | FAM(blue) | VI | 156-246 |
P30 | STM1104 | TGATTCTCTTGCCTACTGTAATCG | CAAAGTGGTGTGAAGCTGTGA | FAM(blue) | VIII | 159-176 |
P31 | STM1053 | TCTCCCCATCTTAATGTTTC | CAACACAGCATACAGATCATC | FAM(blue) | III | 166-169 |
P32 | STM3012 | CAACTCAAACCAGAAGGCAAA | GAGAAATGGGCACAAAAAACA | FAM(blue) | IX | 161-264 |
P33 | STI0012 | GAAGCGACTTCCAAAATCAGA | AAAGGGAGGAATAGAAACCAAAA | FAM(blue) | IV | 162-187 |
P34 | STM2022 | GCGTCAGCGATTTCAGTACTA | TTCAGTCAACTCCTGTTGCG | FAM(blue) | II | 174-299 |
P35 | STM1049 | CTACCAGTTTGTTGATTGTGGTG | AGGGACTTTAATTTGTTGGACG | FAM(blue) | I | 170-198 |
P36 | STPoAc58 | TTGATGAAAGGAATGCAGCTTGTG | ACGTTAAAGAAGTGAGAGTACGAC | FAM(blue) | V | 220-245 |
P37 | STG0025 | TGGAATCCGAATTACGCTCT | AGGTTTTACCACTCGGGCTT | FAM(blue) | X | 187-199 |
P38 | STG0026 | ACTGCCGCAAAAAGTGAAAA | GCCGCTAGGTGGAGTAGATG | FAM(blue) | VII | 272-287 |
P39 | STM0037 | AATTTAACTTAGAAGATTAGTCTC | ATTTGGTTGGGTATGATA | FAM(blue) | XI | 66-92 |
P40 | SSR0387 | CGCACGTATAGAATTAGAATTAAGAAA | CCCCTCGCATTAGAATTTTG | FAM(blue) | IX | 137-164 |
P41 | SSR0707 | AGAAATTGGCAGAGCATTTAGCTG | GGATTAGACAAACCTTCTTTTCCACA | FAM(blue) | III | 131-163 |
表1 实验使用的SSR引物信息
Table 1 Information of SSR primers in this study
序号 Code | 引物 Primer | 上游引物 Forward primer(5'-3') | 下游引物 Reverse primer(5'-3') | 荧光标记 Tag | 染色体 Chr. | 长度 Length/bp |
---|---|---|---|---|---|---|
P1 | PM0950 | GGAGGGAAAAATTAGGTATTGATGG | CCTTTGAGGCTTTGACCGTATCTA | FAM(blue) | VI | 91-133 |
P2 | STM1091 | GGACAATCCATAAATCTCAG | AGCAGCAGCAGCCTCTCCTA | FAM(blue) | XII | 108 |
P3 | SSR12419 | TGCACTTTCTTTGTCACCATTC | TGACCTACTGTATGCTTTGGAA | FAM(blue) | IX | 105-174 |
P4 | PM0936 | AGTTGTGTCTCAATCCTTTCACGA | TGCTTAAAAATCTGACTTTGGTGTTC | FAM(blue) | XII | 103-132 |
P5 | SSR15406 | TCCATATGCAAGTGGCAAAA | CACGTTGGATCCAGGAGGTA | FAM(blue) | X | 173-190 |
P6 | PM0642 | GCATCCGTTAATTTCGGAAAAA | AACCCTAGTCATTTGGGTGGATCT | FAM(blue) | XII | 118-139 |
P7 | PM0998 | TCAATATACTTGGTCAGCAGCCTGT | CTTTCCCATATCCAGAGAGTGAGG | FAM(blue) | III | 125-146 |
P8 | PM1152 | CGAAGAATATTTCTTTTTGAATACATCA | GGTACATTTTGTATCAATTTGTTCAGG | FAM(blue) | I | 138-158 |
P9 | STM1106 | TCCAGCTGATTGGTTAGGTTG | ATGCGAATCTACTCGTCATGG | FAM(blue) | X | 138-190 |
P10 | PM0938 | CTTATGTTTTGATCTATTACACATGGCA | ACTCGAGACCTCTGATTTATGGGA | FAM(blue) | VII | 143-179 |
P11 | SSR0675 | GCTGTGTTTTCAATTTCTTCAGCA | GTCTCGTTGTTCATCAAA | FAM(blue) | VI | 137-150 |
P12 | PM0678 | CCATCATGAGCCTTGCTTACATTT | CAACAAGGCACAAAGCTAACAGAA | FAM(blue) | VIII | 143-162 |
P13 | STWIN12G | TGTTGATTGTGGTGATAA | TGTTGGACGTGACTTGTA | FAM(blue) | XI | 155-164 |
P14 | SSR17995 | GGCTTTTGTGTGTTTAGGACG | GGTCTCTTTCCGGCCACTA | FAM(blue) | VI | 117-194 |
P15 | SSR05305 | TGCCCAGCTCTAGATTCCAT | CAATGTTACAGACTCGCAGGA | FAM(blue) | II | 164-190 |
P16 | PM0355 | TCGAAATACTATCACGGACCAACA | TGACATCAACTCACGTTCACTATCTTT | FAM(blue) | II | 178-221 |
P17 | SSR08337 | CGTTAAGGAGGAGGAGGAAAA | CCAAATAACGTGTTGAGCCC | FAM(blue) | IV | 179-203 |
P18 | SSR05059 | CCTTTCTGTTCTTCGTTCCG | TGACTCAAAAGGTTTTTCGAACT | FAM(blue) | IX | 177-224 |
P19 | SSR01054 | TAGGGATGAGCTTCAACTCG | CGGTTCTGACTTGGACTAATGA | FAM(blue) | VII | 187-219 |
P20 | PM0878 | TTCCTTTGGGGAATTTGTCTTTTT | TCAAGAAAGAGCTTGCGTGATATTC | FAM(blue) | I | 175-212 |
P21 | STM1052 | CAATTTCGTTTTTTCATGTGACAC | ATGGCGTAATTTGATTTAATACGTAA | FAM(blue) | IX | 207-254 |
P22 | STM5120 | ATCCTTCTATGGCGTTCCAA | ATTGCTCAAGAATGGCCAC | FAM(blue) | VII | 89-139 |
P23 | STI032 | TGGGAAGAATCCTGAAATGG | TGCTCTACCAATTAACGGCA | FAM(blue) | V | 107-125 |
P24 | STM1058 | ACAATTTAATTCAAGAAGCTAGG | CCAAATTTGTATACTTCAATATGA | FAM(blue) | III | 105-118 |
P25 | STI033 | TGAGGGTTTTCAGAAAGGGA | CATCCTTGCAACAACCTCCT | FAM(blue) | VII | 109-130 |
P26 | STG0016 | AGCTGCTCAGCATCAAGAGA | ACCACCTCAGGCACTTCATC | FAM(blue) | I | 117-154 |
P27 | STM2013 | TTCGGAATTACCCTCTGCC | AAAAAAAGAACGCGCACG | FAM(blue) | VII | 140-165 |
P28 | STI017 | TATGGAAATTCCGGTGATGG | GACGGTGACAAAGAGGAAGG | FAM(blue) | XI | 160-172 |
P29 | STM0019a | AATAGGTGTACTGACTCTCAATG | TTGAAGTAAAAGTCCTAGTATGTG | FAM(blue) | VI | 156-246 |
P30 | STM1104 | TGATTCTCTTGCCTACTGTAATCG | CAAAGTGGTGTGAAGCTGTGA | FAM(blue) | VIII | 159-176 |
P31 | STM1053 | TCTCCCCATCTTAATGTTTC | CAACACAGCATACAGATCATC | FAM(blue) | III | 166-169 |
P32 | STM3012 | CAACTCAAACCAGAAGGCAAA | GAGAAATGGGCACAAAAAACA | FAM(blue) | IX | 161-264 |
P33 | STI0012 | GAAGCGACTTCCAAAATCAGA | AAAGGGAGGAATAGAAACCAAAA | FAM(blue) | IV | 162-187 |
P34 | STM2022 | GCGTCAGCGATTTCAGTACTA | TTCAGTCAACTCCTGTTGCG | FAM(blue) | II | 174-299 |
P35 | STM1049 | CTACCAGTTTGTTGATTGTGGTG | AGGGACTTTAATTTGTTGGACG | FAM(blue) | I | 170-198 |
P36 | STPoAc58 | TTGATGAAAGGAATGCAGCTTGTG | ACGTTAAAGAAGTGAGAGTACGAC | FAM(blue) | V | 220-245 |
P37 | STG0025 | TGGAATCCGAATTACGCTCT | AGGTTTTACCACTCGGGCTT | FAM(blue) | X | 187-199 |
P38 | STG0026 | ACTGCCGCAAAAAGTGAAAA | GCCGCTAGGTGGAGTAGATG | FAM(blue) | VII | 272-287 |
P39 | STM0037 | AATTTAACTTAGAAGATTAGTCTC | ATTTGGTTGGGTATGATA | FAM(blue) | XI | 66-92 |
P40 | SSR0387 | CGCACGTATAGAATTAGAATTAAGAAA | CCCCTCGCATTAGAATTTTG | FAM(blue) | IX | 137-164 |
P41 | SSR0707 | AGAAATTGGCAGAGCATTTAGCTG | GGATTAGACAAACCTTCTTTTCCACA | FAM(blue) | III | 131-163 |
序号 Code | 引物 Primer | Na | Ne | He | I | 多态位点 Polymorphic alleles | 多态百分率 Percentage of polymorphic bands/% | PIC |
---|---|---|---|---|---|---|---|---|
P1 | PM0950 | 2 | 1.20 | 0.14 | 0.25 | 11 | 100 | 0.75 |
P2 | STM1091 | 1 | 1 | 0 | 0 | 0 | 0 | 0.00 |
P3 | SSR12419 | 2 | 1.27 | 0.16 | 0.27 | 9 | 100 | 0.70 |
P4 | PM0936 | 2 | 1.45 | 0.27 | 0.42 | 9 | 100 | 0.83 |
P5 | SSR15406 | 2 | 1.24 | 0.16 | 0.26 | 6 | 100 | 0.56 |
P6 | PM0642 | 2 | 1.30 | 0.20 | 0.33 | 8 | 100 | 0.79 |
P7 | PM0998 | 1.8 | 1.19 | 0.13 | 0.21 | 4 | 80 | 0.57 |
P8 | PM1152 | 2 | 1.28 | 0.18 | 0.30 | 7 | 100 | 0.69 |
P9 | STM1106 | 1.86 | 1.28 | 0.18 | 0.30 | 6 | 85.71 | 0.69 |
P10 | PM0938 | 2 | 1.33 | 0.21 | 0.34 | 8 | 100 | 0.75 |
P11 | SSR0675 | 2 | 1.66 | 0.36 | 0.53 | 4 | 100 | 0.68 |
P12 | PM0678 | 2 | 1.34 | 0.20 | 0.31 | 9 | 100 | 0.77 |
P13 | STWIN12G | 2 | 1.23 | 0.15 | 0.24 | 7 | 100 | 0.59 |
P14 | SSR17995 | 2 | 1.20 | 0.13 | 0.23 | 11 | 100 | 0.79 |
P15 | SSR05305 | 1.9 | 1.21 | 0.14 | 0.23 | 9 | 90 | 0.71 |
P16 | PM0355 | 2 | 1.30 | 0.19 | 0.30 | 10 | 100 | 0.78 |
P17 | SSR08337 | 1.8 | 1.21 | 0.12 | 0.20 | 4 | 80 | 0.56 |
P18 | SSR05059 | 1.94 | 1.18 | 0.14 | 0.24 | 16 | 94.12 | 0.89 |
P19 | SSR01054 | 1.89 | 1.37 | 0.23 | 0.35 | 8 | 88.89 | 0.81 |
P20 | PM0878 | 2 | 1.52 | 0.28 | 0.41 | 6 | 100 | 0.71 |
P21 | STM1052 | 2 | 1.40 | 0.25 | 0.39 | 9 | 100 | 0.83 |
P22 | STM5120 | 1.75 | 1.52 | 0.28 | 0.41 | 3 | 75 | 0.69 |
P23 | STI032 | 2 | 1.40 | 0.25 | 0.40 | 7 | 100 | 0.77 |
P24 | STM1058 | 1.83 | 1.25 | 0.15 | 0.25 | 5 | 83.33 | 0.66 |
P25 | STI033 | 2 | 1.57 | 0.36 | 0.54 | 5 | 100 | 0.76 |
P26 | STG0016 | 2 | 1.37 | 0.22 | 0.34 | 9 | 100 | 0.78 |
P27 | STM2013 | 1.89 | 1.61 | 0.32 | 0.47 | 8 | 88.89 | 0.84 |
P28 | STI017 | 2 | 1.61 | 0.34 | 0.51 | 5 | 100 | 0.73 |
P29 | STM0019a | 2 | 1.28 | 0.16 | 0.26 | 10 | 100 | 0.74 |
P30 | STM1104 | 2 | 1.38 | 0.22 | 0.35 | 6 | 100 | 0.66 |
P31 | STM1053 | 1.33 | 1.21 | 0.13 | 0.19 | 1 | 33.33 | 0.43 |
P32 | STM3012 | 2 | 1.33 | 0.21 | 0.33 | 12 | 100 | 0.84 |
P33 | STI0012 | 2 | 1.48 | 0.28 | 0.42 | 8 | 100 | 0.80 |
P34 | STM2022 | 2 | 1.33 | 0.23 | 0.36 | 14 | 100 | 0.88 |
P35 | STM1049 | 2 | 1.26 | 0.17 | 0.28 | 9 | 100 | 0.73 |
P36 | STPoAc58 | 1.9 | 1.20 | 0.13 | 0.22 | 9 | 90 | 0.68 |
P37 | STG0025 | 1.83 | 1.25 | 0.18 | 0.30 | 5 | 83.33 | 0.67 |
P38 | STG0026 | 1.8 | 1.46 | 0.26 | 0.38 | 4 | 80 | 0.65 |
P39 | STM0037 | 2 | 1.43 | 0.25 | 0.39 | 9 | 100 | 0.81 |
P40 | SSR0387 | 2 | 1.28 | 0.19 | 0.32 | 13 | 100 | 0.88 |
P41 | SSR0707 | 1.89 | 1.42 | 0.23 | 0.34 | 8 | 88.89 | 0.78 |
均值 Mean | 1.91 | 1.34 | 0.20 | 0.32 | 7.59 | 91.26 | 0.71 |
表2 SSR引物的遗传多样性
Table 2 Genetic diversity of SSR primers
序号 Code | 引物 Primer | Na | Ne | He | I | 多态位点 Polymorphic alleles | 多态百分率 Percentage of polymorphic bands/% | PIC |
---|---|---|---|---|---|---|---|---|
P1 | PM0950 | 2 | 1.20 | 0.14 | 0.25 | 11 | 100 | 0.75 |
P2 | STM1091 | 1 | 1 | 0 | 0 | 0 | 0 | 0.00 |
P3 | SSR12419 | 2 | 1.27 | 0.16 | 0.27 | 9 | 100 | 0.70 |
P4 | PM0936 | 2 | 1.45 | 0.27 | 0.42 | 9 | 100 | 0.83 |
P5 | SSR15406 | 2 | 1.24 | 0.16 | 0.26 | 6 | 100 | 0.56 |
P6 | PM0642 | 2 | 1.30 | 0.20 | 0.33 | 8 | 100 | 0.79 |
P7 | PM0998 | 1.8 | 1.19 | 0.13 | 0.21 | 4 | 80 | 0.57 |
P8 | PM1152 | 2 | 1.28 | 0.18 | 0.30 | 7 | 100 | 0.69 |
P9 | STM1106 | 1.86 | 1.28 | 0.18 | 0.30 | 6 | 85.71 | 0.69 |
P10 | PM0938 | 2 | 1.33 | 0.21 | 0.34 | 8 | 100 | 0.75 |
P11 | SSR0675 | 2 | 1.66 | 0.36 | 0.53 | 4 | 100 | 0.68 |
P12 | PM0678 | 2 | 1.34 | 0.20 | 0.31 | 9 | 100 | 0.77 |
P13 | STWIN12G | 2 | 1.23 | 0.15 | 0.24 | 7 | 100 | 0.59 |
P14 | SSR17995 | 2 | 1.20 | 0.13 | 0.23 | 11 | 100 | 0.79 |
P15 | SSR05305 | 1.9 | 1.21 | 0.14 | 0.23 | 9 | 90 | 0.71 |
P16 | PM0355 | 2 | 1.30 | 0.19 | 0.30 | 10 | 100 | 0.78 |
P17 | SSR08337 | 1.8 | 1.21 | 0.12 | 0.20 | 4 | 80 | 0.56 |
P18 | SSR05059 | 1.94 | 1.18 | 0.14 | 0.24 | 16 | 94.12 | 0.89 |
P19 | SSR01054 | 1.89 | 1.37 | 0.23 | 0.35 | 8 | 88.89 | 0.81 |
P20 | PM0878 | 2 | 1.52 | 0.28 | 0.41 | 6 | 100 | 0.71 |
P21 | STM1052 | 2 | 1.40 | 0.25 | 0.39 | 9 | 100 | 0.83 |
P22 | STM5120 | 1.75 | 1.52 | 0.28 | 0.41 | 3 | 75 | 0.69 |
P23 | STI032 | 2 | 1.40 | 0.25 | 0.40 | 7 | 100 | 0.77 |
P24 | STM1058 | 1.83 | 1.25 | 0.15 | 0.25 | 5 | 83.33 | 0.66 |
P25 | STI033 | 2 | 1.57 | 0.36 | 0.54 | 5 | 100 | 0.76 |
P26 | STG0016 | 2 | 1.37 | 0.22 | 0.34 | 9 | 100 | 0.78 |
P27 | STM2013 | 1.89 | 1.61 | 0.32 | 0.47 | 8 | 88.89 | 0.84 |
P28 | STI017 | 2 | 1.61 | 0.34 | 0.51 | 5 | 100 | 0.73 |
P29 | STM0019a | 2 | 1.28 | 0.16 | 0.26 | 10 | 100 | 0.74 |
P30 | STM1104 | 2 | 1.38 | 0.22 | 0.35 | 6 | 100 | 0.66 |
P31 | STM1053 | 1.33 | 1.21 | 0.13 | 0.19 | 1 | 33.33 | 0.43 |
P32 | STM3012 | 2 | 1.33 | 0.21 | 0.33 | 12 | 100 | 0.84 |
P33 | STI0012 | 2 | 1.48 | 0.28 | 0.42 | 8 | 100 | 0.80 |
P34 | STM2022 | 2 | 1.33 | 0.23 | 0.36 | 14 | 100 | 0.88 |
P35 | STM1049 | 2 | 1.26 | 0.17 | 0.28 | 9 | 100 | 0.73 |
P36 | STPoAc58 | 1.9 | 1.20 | 0.13 | 0.22 | 9 | 90 | 0.68 |
P37 | STG0025 | 1.83 | 1.25 | 0.18 | 0.30 | 5 | 83.33 | 0.67 |
P38 | STG0026 | 1.8 | 1.46 | 0.26 | 0.38 | 4 | 80 | 0.65 |
P39 | STM0037 | 2 | 1.43 | 0.25 | 0.39 | 9 | 100 | 0.81 |
P40 | SSR0387 | 2 | 1.28 | 0.19 | 0.32 | 13 | 100 | 0.88 |
P41 | SSR0707 | 1.89 | 1.42 | 0.23 | 0.34 | 8 | 88.89 | 0.78 |
均值 Mean | 1.91 | 1.34 | 0.20 | 0.32 | 7.59 | 91.26 | 0.71 |
图2 51份马铃薯品种遗传距离热图 1-51依次对应表1中51份马铃薯品种。下同
Fig. 2 Heat map of genetic distances for 51 potato varieties 1-51 indicates sequentially to the 51 potato varieties in Table 1. The same below
序号Code | 指纹图谱Fingerprint | 序号Code | 指纹图谱Fingerprint | |||||
---|---|---|---|---|---|---|---|---|
STM0037 | SSR0387 | SSR01054 | STM0037 | SSR0387 | SSR01054 | |||
1 | 000110001 | 0000000001010 | 101010100 | 27 | 010100110 | 0010100001010 | 100000100 | |
2 | 010000000 | 0010100000010 | 100000100 | 28 | 001010010 | 0101000000000 | 100010100 | |
3 | 011010000 | 0001000100010 | 100001100 | 29 | 011010000 | 0011100000010 | 001000100 | |
4 | 011000000 | 0001000010000 | 100010100 | 30 | 011010000 | 0001010110000 | 010000100 | |
5 | 001010100 | 0101000000000 | 100011000 | 31 | 010110001 | 0000000000010 | 010010100 | |
6 | 010010010 | 0000001010100 | 101000100 | 32 | 010100010 | 0101000010010 | 010001000 | |
7 | 011010000 | 0000001010000 | 100111000 | 33 | 010100010 | 0101000010010 | 010001000 | |
8 | 011100000 | 0001000010010 | 101011000 | 34 | 011100000 | 0010100110000 | 100000100 | |
9 | 001010110 | 0101000000000 | 100001010 | 35 | 011100000 | 0000000110010 | 000001000 | |
10 | 010100010 | 0010100001010 | 100000100 | 36 | 011000010 | 0010101010000 | 001000100 | |
11 | 011010000 | 0101001010000 | 100010100 | 37 | 011110000 | 0000001010000 | 000010000 | |
12 | 010000010 | 0000001010100 | 010001000 | 38 | 011110000 | 0000001010000 | 000010000 | |
13 | 011010000 | 0101001010000 | 010011000 | 39 | 011100000 | 0000000010010 | 100001100 | |
14 | 011000000 | 0000010110000 | 101010100 | 40 | 010010000 | 0000000100010 | 100010000 | |
15 | 010000010 | 0000001010100 | 000001000 | 41 | 011010010 | 0000000110010 | 000000100 | |
16 | 010110000 | 0010100000000 | 011000100 | 42 | 001110000 | 0000000010010 | 000000100 | |
17 | 011010000 | 0000001010000 | 100000100 | 43 | 011110000 | 0011100000000 | 001010100 | |
18 | 010110000 | 0010100010000 | 101001100 | 44 | 010100000 | 0010100000010 | 000000100 | |
19 | 010010010 | 0000010100000 | 000001100 | 45 | 100000110 | 0000100100010 | 100000100 | |
20 | 010010000 | 0000000001010 | 100001100 | 46 | 001110000 | 0001000000011 | 000001100 | |
21 | 110100000 | 0001100100010 | 000001100 | 47 | 011100000 | 0000000010010 | 000001100 | |
22 | 011100010 | 0010100010010 | 000011000 | 48 | 011010000 | 0000000100000 | 010001100 | |
23 | 010011001 | 0000000001010 | 100010100 | 49 | 001000010 | 1001000000000 | 000011000 | |
24 | 010010010 | 0101000000000 | 100010100 | 50 | 001010000 | 1001000010010 | 000011000 | |
25 | 010100010 | 0010101010000 | 101011000 | 51 | 011000000 | 1001000000000 | 101001000 | |
26 | 011100000 | 0010100010010 | 100001100 |
表3 51份马铃薯品种的指纹图谱
Table 3 Fingerprints of 51 potato varieties
序号Code | 指纹图谱Fingerprint | 序号Code | 指纹图谱Fingerprint | |||||
---|---|---|---|---|---|---|---|---|
STM0037 | SSR0387 | SSR01054 | STM0037 | SSR0387 | SSR01054 | |||
1 | 000110001 | 0000000001010 | 101010100 | 27 | 010100110 | 0010100001010 | 100000100 | |
2 | 010000000 | 0010100000010 | 100000100 | 28 | 001010010 | 0101000000000 | 100010100 | |
3 | 011010000 | 0001000100010 | 100001100 | 29 | 011010000 | 0011100000010 | 001000100 | |
4 | 011000000 | 0001000010000 | 100010100 | 30 | 011010000 | 0001010110000 | 010000100 | |
5 | 001010100 | 0101000000000 | 100011000 | 31 | 010110001 | 0000000000010 | 010010100 | |
6 | 010010010 | 0000001010100 | 101000100 | 32 | 010100010 | 0101000010010 | 010001000 | |
7 | 011010000 | 0000001010000 | 100111000 | 33 | 010100010 | 0101000010010 | 010001000 | |
8 | 011100000 | 0001000010010 | 101011000 | 34 | 011100000 | 0010100110000 | 100000100 | |
9 | 001010110 | 0101000000000 | 100001010 | 35 | 011100000 | 0000000110010 | 000001000 | |
10 | 010100010 | 0010100001010 | 100000100 | 36 | 011000010 | 0010101010000 | 001000100 | |
11 | 011010000 | 0101001010000 | 100010100 | 37 | 011110000 | 0000001010000 | 000010000 | |
12 | 010000010 | 0000001010100 | 010001000 | 38 | 011110000 | 0000001010000 | 000010000 | |
13 | 011010000 | 0101001010000 | 010011000 | 39 | 011100000 | 0000000010010 | 100001100 | |
14 | 011000000 | 0000010110000 | 101010100 | 40 | 010010000 | 0000000100010 | 100010000 | |
15 | 010000010 | 0000001010100 | 000001000 | 41 | 011010010 | 0000000110010 | 000000100 | |
16 | 010110000 | 0010100000000 | 011000100 | 42 | 001110000 | 0000000010010 | 000000100 | |
17 | 011010000 | 0000001010000 | 100000100 | 43 | 011110000 | 0011100000000 | 001010100 | |
18 | 010110000 | 0010100010000 | 101001100 | 44 | 010100000 | 0010100000010 | 000000100 | |
19 | 010010010 | 0000010100000 | 000001100 | 45 | 100000110 | 0000100100010 | 100000100 | |
20 | 010010000 | 0000000001010 | 100001100 | 46 | 001110000 | 0001000000011 | 000001100 | |
21 | 110100000 | 0001100100010 | 000001100 | 47 | 011100000 | 0000000010010 | 000001100 | |
22 | 011100010 | 0010100010010 | 000011000 | 48 | 011010000 | 0000000100000 | 010001100 | |
23 | 010011001 | 0000000001010 | 100010100 | 49 | 001000010 | 1001000000000 | 000011000 | |
24 | 010010010 | 0101000000000 | 100010100 | 50 | 001010000 | 1001000010010 | 000011000 | |
25 | 010100010 | 0010101010000 | 101011000 | 51 | 011000000 | 1001000000000 | 101001000 | |
26 | 011100000 | 0010100010010 | 100001100 |
[1] | Devaux A, Kromann P, Ortiz O. Potatoes for sustainable global food security[J]. Potato Res, 2014, 57(3): 185-199. |
[2] | Spanoghe M, Marique T, Nirsha A, et al. Genetic diversity trends in the cultivated potato: a spatiotemporal overview[J]. Biology, 2022, 11(4): 604. |
[3] | 谢开云, 王晓雪, 王凤义. 我国冬闲稻田马铃薯生产的潜力与问题[J]. 中国马铃薯, 2010, 24(6): 370-375. |
Xie KY, Wang XX, Wang FY. Potential and problems of potato production in winter fallow rice fields in China[J]. Chin Potato J, 2010, 24(6): 370-375. | |
[4] | Food and Agriculture Organization of the United Nations. https://www.fao.org/faostat/en/#data/QCL[DB/OL]. 2022. |
[5] | Zaheer K, Akhtar MH. Potato production, usage, and nutrition—a review[J]. Crit Rev Food Sci Nutr, 2016, 56(5): 711-721. |
[6] |
安苗, 王彤彤, 付逸婷, 等. 52个马铃薯遗传多样性分析及SSR分子身份证构建[J]. 生物技术通报, 2023, 39(12): 136-147.
doi: 10.13560/j.cnki.biotech.bull.1985.2023-0512 |
An M, Wang TT, Fu YT, et al. Genetic diversity analysis and molecular identity card construction by SSR markers of 52 Solanum tuberosum L. varieties(lines)[J]. Biotechnol Bull, 2023, 39(12): 136-147. | |
[7] | Govindaraj M, Vetriventhan M, Srinivasan M. Importance of genetic diversity assessment in crop plants and its recent advances: an overview of its analytical perspectives[J]. Genet Res Int, 2015, 2015: 431487. |
[8] |
杨春, 齐海英. 马铃薯种质资源表型性状的遗传多样性分析[J]. 农学学报, 2020, 10(1): 13-21.
doi: 10.11923/j.issn.2095-4050.cjas20190500054 |
Yang C, Qi HY. Phenotypic traits of potato germplasm resource: genetic diversity analysis[J]. J Agric, 2020, 10(1): 13-21.
doi: 10.11923/j.issn.2095-4050.cjas20190500054 |
|
[9] | van Eck HJ. Genetics of morphological and Tuber traits[M]// Potato Biology and Biotechnology. Amsterdam: Elsevier, 2007: 91-115. |
[10] | Tillault AS, Yevtushenko DP. Simple sequence repeat analysis of new potato varieties developed in Alberta, Canada[J]. Plant Direct, 2019, 3(6): e00140. |
[11] | 宋峥, 王崇, 徐颖华, 等. 马铃薯地方种质资源的SSR遗传多样性分析[J]. 分子植物育种, 2022, 20(21): 7143-7153. |
Song Z, Wang C, Xu YH, et al. SSR analysis on genetic diversity for local potato germplasm resources[J]. Molecular Plant Breeding, 2022, 20(21): 7143-7153. | |
[12] | Jian YQ, Yan WY, Xu JF, et al. Genome-wide simple sequence repeat markers in potato: abundance, distribution, composition, and polymorphism[J]. DNA Res, 2021, 28(6): dsab020. |
[13] | 田青兰, 刘洁云, 黄伟华, 等. 基于RAD-seq的西番莲系统进化分析及种间SSR标记开发[J]. 农业生物技术学报, 2022, 30(11): 2108-2118. |
Tian QL, Liu JY, Huang WH, et al. Phylogenetic analysis and development of SSR markers based on RAD-seq in Passiflora[J]. J Agric Biotechnol, 2022, 30(11): 2108-2118. | |
[14] | 王秀军, 赵彦贝, 王静, 等. 基于SSR分子标记的175份蜡梅种质遗传多样性分析和指纹图谱构建[J]. 生物工程学报, 2024, 40(1): 252-268. |
Wang XJ, Zhao YB, Wang J, et al. Genetic diversity analysis and fingerprinting of 175 Chimonanthus praecox germplasm based on SSR molecular marker[J]. Chin J Biotechnol, 2024, 40(1): 252-268. | |
[15] |
Kaur S, Panesar PS, Bera MB, et al. Simple sequence repeat markers in genetic divergence and marker-assisted selection of rice cultivars: a review[J]. Crit Rev Food Sci Nutr, 2015, 55(1): 41-49.
doi: 10.1080/10408398.2011.646363 pmid: 24915404 |
[16] | 王晓映, 张方玉, 万星, 等. 基于分子标记和表型性状的水稻地方品种遗传多样性研究[J]. 植物遗传资源学报, 2023, 24(3): 636-647. |
Wang XY, Zhang FY, Wan X, et al. Diversity of rice landraces revealed by molecular markers and phenotypic traits[J]. J Plant Genet Resour, 2023, 24(3): 636-647.
doi: 10.13430/j.cnki.jpgr.20221018002 |
|
[17] | 王衍坤, 韦新宇, 胡杰, 等. 12份水稻恢复系的遗传多样性分析及指纹图谱构建[J]. 亚热带农业研究, 2022, 18(2): 73-78. |
Wang YK, Wei XY, Hu J, et al. Genetic diversity analysis and fingerprint construction of 12 rice restorer lines[J]. Subtrop Agric Res, 2022, 18(2): 73-78. | |
[18] | 王健胜, 侯桂玲, 王二伟, 等. 基于SSR标记的100份国内外小麦种质遗传多样性分析及DNA指纹图谱构建[J]. 山东农业科学, 2023, 55(9): 17-24. |
Wang JS, Hou GL, Wang EW, et al. Genetic diversity analysis and DNA fingerprint construction of 100 wheat germplasms from home and abroad based on SSR markers[J]. Shandong Agric Sci, 2023, 55(9): 17-24. | |
[19] | 郑永胜, 王丽媛, 段丽丽, 等. 350份小麦种质的SSR遗传多样性分析[J]. 山东农业科学, 2020, 52(12): 1-6. |
Zheng YS, Wang LY, Duan LL, et al. Genetic diversity analysis of 350 wheat germplasms by SSR markers[J]. Shandong Agric Sci, 2020, 52(12): 1-6. | |
[20] | 李松, 施德林, 董云武, 等. 基于SSR标记的云南35个玉米自交系遗传多样性分析[J]. 云南农业大学学报: 自然科学, 2023, 38(5): 732-738. |
Li S, Shi DL, Dong YW, et al. Analysis of genetic diversity of 35 maize inbred lines in Yunnan based on SSR markers[J]. J Yunnan Agric Univ Nat Sci, 2023, 38(5): 732-738. | |
[21] | 金锐, 于新艳, 李丹, 等. SSR标记在玉米杂种优势类群划分中的应用[J/OL]. 分子植物育种, 2023: 1-12. |
Jin R, Yu XY, Li D, et al. Application of SSR markers in the delineation of maize hybrid dominance taxa[J/OL]. Molecular Plant Breeding, 2023: 1-12. | |
[22] | Villanueva-Gutierrez EE, Johansson E, Prieto-Linde ML, et al. Simple sequence repeat markers reveal genetic diversity and population structure of Bolivian wild and cultivated tomatoes(Solanum lycopersicum L.)[J]. Genes, 2022, 13(9): 1505. |
[23] |
柯会锋, 苏红梅, 孙正文, 等. 棉花现代品种资源产量与纤维品质性状鉴定及分子标记评价[J]. 作物学报, 2024, 50(2): 280-293.
doi: 10.3724/SP.J.1006.2023.34075 |
Ke HF, Su HM, Sun ZW, et al. Identification for yield and fiber quality traits and evaluation of molecular markers in modern cotton varieties[J]. Acta Agron Sin, 2024, 50(2): 280-293. | |
[24] | 李佳奇, 于卓, 张胜, 等. 四倍体马铃薯淀粉含量性状相关SSR标记的开发与验证[J]. 农业生物技术学报, 2021, 29(8): 1630-1639. |
Li JQ, Yu Z, Zhang S, et al. Development and validation of SSR markers related to starch content traits in tetraploid potato(Solanum tuberosum)[J]. J Agric Biotechnol, 2021, 29(8): 1630-1639. | |
[25] | 王磊. 198份CIP马铃薯种质资源的表型性状和晚疫病抗性的遗传多样性研究[D]. 兰州: 甘肃农业大学, 2021. |
Wang L. Study on phenotypic traits and late blight resistance of 198 CIP potato germplasm resources[D]. Lanzhou: Gansu Agricultural University, 2021. | |
[26] | 段绍光, 金黎平, 李广存, 等. 马铃薯品种遗传多样性分析[J]. 作物学报, 2017, 43(5): 718-729. |
Duan SG, Jin LP, Li GC, et al. Genetic diversity analysis of potato varieties[J]. Acta Agron Sin, 2017, 43(5): 718-729. | |
[27] | 张招娟, 邓跃, 黄泷健, 等. 福建省马铃薯主栽品种SSR遗传多样性分析[J]. 分子植物育种, 2019, 17(22): 7420-7427. |
Zhang ZJ, Deng Y, Huang LJ, et al. Genetic diversity analysis of main potato varieties in Fujian Province based on SSR[J]. Mol Plant Breed, 2019, 17(22): 7420-7427. | |
[28] | 程本义, 夏俊辉, 龚俊义, 等. SSR荧光标记毛细管电泳检测法在水稻DNA指纹鉴定中的应用[J]. 中国水稻科学, 2011, 25(6): 672-676. |
Cheng BY, Xia JH, Gong JY, et al. Application of capillary electrophoresis detection with fluorescent SSR markers in rice DNA fingerprint identification[J]. Chin J Rice Sci, 2011, 25(6): 672-676. | |
[29] | 孙小琼, 王芳, 王崇, 等. 马铃薯品种(系)资源的SSR遗传多样性分析及指纹图谱构建[J/OL]. 分子植物育种, 2022:1-27. |
Sun XQ, Wang F, Wang C, et al. SSR genetic diversity analysis and fingerprinting of potato variety(line)resources[J/OL]. Molecular Plant Breeding, 2022: 1-27. | |
[30] |
王琰琰, 王俊, 刘国祥, 等. 基于SSR标记的雪茄烟种质资源指纹图谱库的构建及遗传多样性分析[J]. 作物学报, 2021, 47(7): 1259-1274.
doi: 10.3724/SP.J.1006.2021.04183 |
Wang YY, Wang J, Liu GX, et al. Construction of SSR fingerprint database and genetic diversity analysis of cigar germplasm resources[J]. Acta Agron Sin, 2021, 47(7): 1259-1274. | |
[31] |
Jo KR, Cho S, Cho JH, et al. Analysis of genetic diversity and population structure among cultivated potato clones from Korea and global breeding programs[J]. Sci Rep, 2022, 12(1): 10462.
doi: 10.1038/s41598-022-12874-2 pmid: 35729234 |
[32] | 乔东亚, 王鹏, 王淑安, 等. 基于SNP标记的紫薇遗传多样性分析[J]. 南京林业大学学报: 自然科学版, 2020, 44(4): 21-28. |
Qiao DY, Wang P, Wang SA, et al. Genetic diversity analysis of Lagerstroemia germplasm resources based on SNP markers[J]. J Nanjing For Univ Nat Sci Ed, 2020, 44(4): 21-28. | |
[33] |
陆育生, 彭程, 常晓晓, 等. 基于SSR标记的广东黄皮种质资源遗传多样性分析及分子身份证构建[J]. 生物技术通报, 2023, 39(12): 187-199.
doi: 10.13560/j.cnki.biotech.bull.1985.2023-0349 |
Lu YS, Peng C, Chang XX, et al. Genetic diversity analysis and molecular identity establishment of Clausena lansium germplasm resources from Guangdong Province based on SSR markers[J]. Biotechnol Bull, 2023, 39(12): 187-199. | |
[34] |
王衍莉, 杨义明, 范书田, 等. 基于SSR分子标记的73份山葡萄及杂交后代的遗传多样性分析[J]. 生物技术通报, 2021, 37(1): 189-197.
doi: 10.13560/j.cnki.biotech.bull.1985.2020-0416 |
Wang YL, Yang YM, Fan ST, et al. Genetic diversity analysis of 73 Vitis amurensis and its hybrids offsprings based on SSR molecular markers[J]. Biotechnol Bull, 2021, 37(1): 189-197.
doi: 10.13560/j.cnki.biotech.bull.1985.2020-0416 |
|
[35] | 高玉坤, 崔江慧, 项晓冬, 等. 65个马铃薯品种(系)指纹图谱构建和遗传多样性分析[J]. 农业生物技术学报, 2020, 28(8): 1363-1378. |
Gao YK, Cui JH, Xiang XD, et al. Fingerprint construction and genetic diversity analysis for 65 potato(Solanum tuberosum)varieties(lines)[J]. J Agric Biotechnol, 2020, 28(8): 1363-1378. | |
[36] |
梁燕, 韩传明, 周继磊, 等. 山东核桃良种SSR指纹图谱及分子身份证的构建——基于毛细管电泳分析[J]. 中国农学通报, 2022, 38(15): 113-121.
doi: 10.11924/j.issn.1000-6850.casb2021-0740 |
Liang Y, Han CM, Zhou JL, et al. Construction of SSR fingerprint and molecular identity card of Shandong elite julans regia cultivars—based on capillary electrophoresis analysis[J]. Chin Agric Sci Bull, 2022, 38(15): 113-121. | |
[37] | 刘文林, 张举梅, 盛万民, 等. 52份俄罗斯引进马铃薯种质资源的遗传多样性与分子身份证构建[J]. 分子植物育种, 2016, 14(1): 251-258. |
Liu WL, Zhang JM, Sheng WM, et al. Genetic diversity analysis and molecular identities establishment of 52Russian potato varieties[J]. Mol Plant Breed, 2016, 14(1): 251-258. | |
[38] | 杨馨月, 张霞, 于卓, 等. 彩色马铃薯新品系细胞学观测及SSR指纹图谱构建[J]. 种子, 2023, 42(11): 93-100. |
Yang XY, Zhang X, Yu Z, et al. Cytological observation and SSR fingerprint construction of new color potato lines[J]. Seed, 2023, 42(11): 93-100. |
[1] | 申鹏, 高雅彬, 丁红. 马铃薯SAT基因家族的鉴定和表达分析[J]. 生物技术通报, 2024, 40(9): 64-73. |
[2] | 宋兵芳, 柳宁, 程新艳, 徐晓斌, 田文茂, 高悦, 毕阳, 王毅. 马铃薯G6PDH基因家族鉴定及其在损伤块茎的表达分析[J]. 生物技术通报, 2024, 40(9): 104-112. |
[3] | 王超, 白如仟, 管俊梅, 罗稷林, 何雪姣, 迟绍轶, 马玲. 马铃薯块茎变绿中StHY5对龙葵素合成的促进作用[J]. 生物技术通报, 2024, 40(9): 113-122. |
[4] | 夏士轩, 耿泽栋, 祝光涛, 张春芝, 李大伟. 基于深度学习的马铃薯花粉活力快速检测[J]. 生物技术通报, 2024, 40(9): 123-130. |
[5] | 袁兰, 黄娅楠, 张贝妮, 熊雨萌, 王洪洋. 基于流式细胞仪鉴定马铃薯倍性的高通量样品制备方法[J]. 生物技术通报, 2024, 40(9): 141-147. |
[6] | 宋倩娜, 段永红, 冯瑞云. CRISPR/Cas9介导的高效四倍体马铃薯试管薯基因编辑体系的建立[J]. 生物技术通报, 2024, 40(9): 33-41. |
[7] | 王柯然, 闫俊杰, 刘建凤, 高玉林. RNAi技术在马铃薯害虫防控中的应用和风险[J]. 生物技术通报, 2024, 40(9): 4-10. |
[8] | 张小妹, 周南伶, 张赛行, 王超, 沈玉龙, 管俊梅, 马玲. 马铃薯StDREBs基因的克隆及其表达分析[J]. 生物技术通报, 2024, 40(9): 42-50. |
[9] | 满全财, 孟姿诺, 李伟, 蔡心汝, 苏润东, 付长青, 高顺娟, 崔江慧. 马铃薯AQP基因家族鉴定及表达分析[J]. 生物技术通报, 2024, 40(9): 51-63. |
[10] | 吴娟, 武小娟, 王沛捷, 谢锐, 聂虎帅, 李楠, 马艳红. 彩色马铃薯花青素合成相关ERF基因筛选及表达分析[J]. 生物技术通报, 2024, 40(9): 82-91. |
[11] | 乔岩, 杨芳, 任盼荣, 祁伟亮, 安沛沛, 李茜, 李丹, 肖俊飞. 马铃薯野生种烯酰水合酶超家族基因ScDHNS的克隆与功能分析[J]. 生物技术通报, 2024, 40(9): 92-103. |
[12] | 张震, 李清, 徐菁, 陈凯园, 张春芝, 祝光涛. 马铃薯线粒体靶向表达载体的构建与应用[J]. 生物技术通报, 2024, 40(5): 66-73. |
[13] | 李思琪, 张文臣, 杨柳, 付庆新, 洪新, 张海旺. 基于SSR标记的文冠果遗传多样性分析及指纹图谱构建[J]. 生物技术通报, 2024, 40(5): 74-83. |
[14] | 张玉, 石磊, 巩檑, 聂峰杰, 杨江伟, 刘璇, 杨文静, 张国辉, 颉瑞霞, 张丽. 马铃薯WOX基因家族的鉴定及在离体再生和非生物胁迫中的表达分析[J]. 生物技术通报, 2024, 40(3): 170-180. |
[15] | 梅显军, 宋慧洋, 李京昊, 梅超, 宋倩娜, 冯瑞云, 陈喜明. 马铃薯StDof5的克隆及表达分析[J]. 生物技术通报, 2024, 40(3): 181-192. |
阅读次数 | ||||||
全文 |
|
|||||
摘要 |
|
|||||